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Effects of Membrane, Spacer and Transmembrane Pressure Difference on Process of Oxygen Enrichment of Air

机译:膜,间隔和跨膜压差对空气氧富集过程的影响

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Computational Fluid Dynamics (CFD) method was used to simulate membrane separation for oxygen enrichment of air through grid channel and rectangular channel under different vacuum degrees. The results showed the oxygen concentration and the oxygen enrichment permeation depend on ideal separation factor and permeance coefficient. It could be achieved high oxygen concentration with the low permeance coefficient when ideal separation factors are the same. Spacer geometry in permeate-side channel could affect the performance of membrane module. CFD results revealed that grid channel is superior to rectangular channel. It was also concluded that effects of permeate-side channel on separation performance become more significant when the transmembrane pressure difference is higher.
机译:计算流体动力学(CFD)方法用于模拟通过不同的真空度通过栅极通道和矩形通道的氧气富集的膜分离。结果表明氧浓度和氧富集渗透取决于理想的分离因子和渗透系数。当理想的分离因子是相同的时,它可以通过低渗透系数实现高氧浓度。渗透侧通道中的间隔物质可能影响膜组件的性能。 CFD结果显示,网格通道优于矩形通道。结论是,当跨膜压力差更高时,渗透侧通道对分离性能的影响变得更加显着。

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